UNS S31603에 대하여 완전요인설계를 이용한 전해연마조건에 따른 표면 거칠기의 유효인자 산출

The objective of this investigation was to indentify major factors affecting surface roughness among various parameters of electropolishing process using the design of an experiment method (full factorial design) for UNS S31603. Factors selected included electrolyte composition ratio, applied curren...

Full description

Saved in:
Bibliographic Details
Published inCorrosion science and technology Vol. 21; no. 4; pp. 314 - 324
Main Authors 황현규, Hyun-kyu Hwang, 김성종, Seong-jong Kim
Format Journal Article
LanguageKorean
Published 한국부식방식학회 31.08.2022
Subjects
Online AccessGet full text
ISSN1598-6462
2288-6524
DOI10.14773/cst.2022.21.4.314

Cover

Abstract The objective of this investigation was to indentify major factors affecting surface roughness among various parameters of electropolishing process using the design of an experiment method (full factorial design) for UNS S31603. Factors selected included electrolyte composition ratio, applied current density, and electrolytic polishing time. They were compared through analysis of variance (ANOVA). Results of ANOVA revealed that all parameters could affect surface roughness, with the influence of electrolyte composition ratio being the highest. As a result of surface analysis after electropolishing, the specimen with the deepest surface damage was about 35 times greater than the condition with the smallest surface damage. The largest value of surface roughness after electropolishing was higher than that of mechanical polishing due to excessive processing. On the other hand, the smallest value of surface roughness after electropolishing was 0.159 μm, which was improved by more than 80% compared to the previous mechanical polishing. Taken all results together, it is the most appropriate to perform electrolytic polishing with a sulfuric acid and phosphoric acid ratio of 3:7, an applied current density of 300 mA/cm2, and anelectrolytic polishing time of 5 minutes.
AbstractList The objective of this investigation was to indentify major factors affecting surface roughness among various parameters of electropolishing process using the design of an experiment method (full factorial design) for UNS S31603. Factors selected included electrolyte composition ratio, applied current density, and electrolytic polishing time. They were compared through analysis of variance (ANOVA). Results of ANOVA revealed that all parameters could affect surface roughness, with the influence of electrolyte composition ratio being the highest. As a result of surface analysis after electropolishing, the specimen with the deepest surface damage was about 35 times greater than the condition with the smallest surface damage. The largest value of surface roughness after electropolishing was higher than that of mechanical polishing due to excessive processing. On the other hand, the smallest value of surface roughness after electropolishing was 0.159 μm, which was improved by more than 80% compared to the previous mechanical polishing. Taken all results together, it is the most appropriate to perform electrolytic polishing with a sulfuric acid and phosphoric acid ratio of 3:7, an applied current density of 300 mA/cm2, and anelectrolytic polishing time of 5 minutes.
The objective of this investigation was to indentify major factors affecting surface roughness among various parameters of electropolishing process using the design of an experiment method (full factorial design) for UNS S31603. Factors selected included electrolyte composition ratio, applied current density, and electrolytic polishing time. They were compared through analysis of variance (ANOVA). Results of ANOVA revealed that all parameters could affect surface roughness, with the influence of electrolyte composition ratio being the highest. As a result of surface analysis after electropolishing, the specimen with the deepest surface damage was about 35 times greater than the condition with the smallest surface damage. The largest value of surface roughness after electropolishing was higher than that of mechanical polishing due to excessive processing. On the other hand, the smallest value of surface roughness after electropolishing was 0.159 μm, which was improved by more than 80% compared to the previous mechanical polishing. Taken all results together, it is the most appropriate to perform electrolytic polishing with a sulfuric acid and phosphoric acid ratio of 3:7, an applied current density of 300 mA/cm2, and anelectrolytic polishing time of 5 minutes. KCI Citation Count: 0
The objective of this investigation was to indentify major factors affecting surface roughness among various parameters of electropolishing process using the design of an experiment method (full factorial design) for UNS S31603. Factors selected included electrolyte composition ratio, applied current density, and electrolytic polishing time. They were compared through analysis of variance (ANOVA). Results of ANOVA revealed that all parameters could affect surface roughness, with the influence of electrolyte composition ratio being the highest. As a result of surface analysis after electropolishing, the specimen with the deepest surface damage was about 35 times greater than the condition with the smallest surface damage. The largest value of surface roughness after electropolishing was higher than that of mechanical polishing due to excessive processing. On the other hand, the smallest value of surface roughness after electropolishing was 0.159 ㎛, which was improved by more than 80% compared to the previous mechanical polishing. Taken all results together, it is the most appropriate to perform electrolytic polishing with a sulfuric acid and phosphoric acid ratio of 3:7, an applied current density of 300 mA/cm2, and anelectrolytic polishing time of 5 minutes.
Author Hyun-kyu Hwang
김성종
Seong-jong Kim
황현규
Author_xml – sequence: 1
  fullname: 황현규
– sequence: 2
  fullname: Hyun-kyu Hwang
– sequence: 3
  fullname: 김성종
– sequence: 4
  fullname: Seong-jong Kim
BackLink https://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART002873310$$DAccess content in National Research Foundation of Korea (NRF)
BookMark eNo9kMtKw0AYhQdRsF5eQDezcSM0zjUzsyziXRS0roekSSRUW2ncCC5EunDhQsFSLa1UUFRwEbFIBZ-ombyD8YKr88P_nQPnjIHhSrXiAzCFkYWZEHSuFB1aBBFiEWwxi2I2BHKESJm3OWHDIIe5ym5mk1EwGUWhizilQhAb5cDxzsY23KbYRtQ0L2ByfpI2rk3zBZqbuunWTevKdPqmfj94qycPn9B0eqb1nDbaMHumjZ5pxsnjmbmLB6-9H_9VnDz0YXrZTp57cPAam4_uoB-bzjU07W7aevpOu72A5jQ27-0JMBI4e5E_-afjoLi4UJxfzq9vLq3MF9bzZclpPpCu43kewtR1VNaEUN8LkIecQHDkCuxyLrLOzA0CRZX0OEOUCIeVfCUV8zkdB7O_sZVaoMulUFed8Ed3q7pc04Wt4orGCFEpGM3gmV-4HEaHoa540Z5eLaxtfu9LbMIlU0ohkXHT_1ykD2rhvlM70lTZUmTzfgGhC5vf
ContentType Journal Article
DBID HZB
Q5X
JDI
ACYCR
DEWEY 620.112
DOI 10.14773/cst.2022.21.4.314
DatabaseName KISS(한국학술정보)
Korean Studies Information Service System (KISS) B-Type
KoreaScience
Korean Citation Index
DatabaseTitleList


DeliveryMethod fulltext_linktorsrc
Discipline Engineering
DocumentTitleAlternate UNS S31603에 대하여 완전요인설계를 이용한 전해연마조건에 따른 표면 거칠기의 유효인자 산출
Identifying Factors Affecting Surface Roughness with Electropolishing Condition Using Full Factorial Design for UNS S31603
EISSN 2288-6524
EndPage 324
ExternalDocumentID oai_kci_go_kr_ARTI_10038743
JAKO202226258499907
3968705
GroupedDBID 9ZL
ACYCR
ALMA_UNASSIGNED_HOLDINGS
HZB
JDI
Q5X
.UV
85H
MZR
OK1
ZZE
ID FETCH-LOGICAL-k853-f8baddd013ba959823edf0d0af750b71b5573144bff9398d540327a4ce9894e53
ISSN 1598-6462
IngestDate Tue Nov 21 21:37:18 EST 2023
Fri Dec 22 12:00:37 EST 2023
Fri May 30 10:55:40 EDT 2025
IsDoiOpenAccess true
IsOpenAccess true
IsPeerReviewed false
IsScholarly true
Issue 4
Keywords Full factorial design
Mechanical polishing
Surface roughness
UNS S31603
Electropolishing
Language Korean
LinkModel OpenURL
MergedId FETCHMERGED-LOGICAL-k853-f8baddd013ba959823edf0d0af750b71b5573144bff9398d540327a4ce9894e53
Notes The Corrosion Science Society of Korea
KISTI1.1003/JNL.JAKO202226258499907
http://www.j-cst.org/main/aissue_view.htm?scode=C&vol=21&no=3
OpenAccessLink http://click.ndsl.kr/servlet/LinkingDetailView?cn=JAKO202226258499907&dbt=JAKO&org_code=O481&site_code=SS1481&service_code=01
PageCount 11
ParticipantIDs nrf_kci_oai_kci_go_kr_ARTI_10038743
kisti_ndsl_JAKO202226258499907
kiss_primary_3968705
PublicationCentury 2000
PublicationDate 20220831
PublicationDateYYYYMMDD 2022-08-31
PublicationDate_xml – month: 08
  year: 2022
  text: 20220831
  day: 31
PublicationDecade 2020
PublicationTitle Corrosion science and technology
PublicationTitleAlternate Corrosion Science and Technology
PublicationYear 2022
Publisher 한국부식방식학회
Publisher_xml – name: 한국부식방식학회
SSID ssib053377260
ssib044733716
ssj0000547658
Score 2.208722
Snippet The objective of this investigation was to indentify major factors affecting surface roughness among various parameters of electropolishing process using the...
SourceID nrf
kisti
kiss
SourceType Open Website
Open Access Repository
Publisher
StartPage 314
SubjectTerms Electropolishing
Full factorial design
Mechanical polishing
Surface roughness
UNS S31603
금속공학
Title UNS S31603에 대하여 완전요인설계를 이용한 전해연마조건에 따른 표면 거칠기의 유효인자 산출
URI https://kiss.kstudy.com/ExternalLink/Ar?key=3968705
http://click.ndsl.kr/servlet/LinkingDetailView?cn=JAKO202226258499907&dbt=JAKO&org_code=O481&site_code=SS1481&service_code=01
https://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART002873310
Volume 21
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
ispartofPNX CORROSION SCIENCE AND TECHNOLOGY, 2022, 21(4), , pp.314-324
journalDatabaseRights – providerCode: PRVHPJ
  databaseName: ROAD: Directory of Open Access Scholarly Resources
  customDbUrl:
  eissn: 2288-6524
  dateEnd: 99991231
  omitProxy: true
  ssIdentifier: ssib044733716
  issn: 1598-6462
  databaseCode: M~E
  dateStart: 20100101
  isFulltext: true
  titleUrlDefault: https://road.issn.org
  providerName: ISSN International Centre
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV3NaxNBFF_aetGDqFWsH2VB5xQSN7MfM3PcTSK10npoC72F_ZQSSSRtLyIikoMHDxVaWksqFSxa8JBikAr-Rcnkf_DN7CTdWhH1sgxv3nvz5s1O5vc2M2807a4RwprjFyOB3CgEKCHLM2oHeQuT2Al9-P3zxXfIuXlnZsmaXbaXx8YPM7uW1teCQvjst-dK_mdUgQbjKk7J_sPIjpQCAcowvvCEEYbnX43x0vxCbsEUVzijSgkxgpiRQxUP0ZLYwFApI2YjRlWdW8rJEkPUEgXXUAXmIpYWysiT3EB3geIiz5Q8HnJt5Cl5YBqKuWzYSFqnVEqSYiLIM6QCgqjU7RYlBXQXT3iU3WCG4gZ5mpOaiqBckhiw54aChhD0mGhRUKiigHGMpmZKa4QCMJOe6h2rpO1BP_FQkwMCWZxeajQBPoipMTz3JHeanvkfQrbOpLel28A20UeM0huCUpaycLryFZUeAiEybFF9coFoXX1DVpNk5FrJbiO3LNwAlqrGPNEjQTGk7hEllWKq77SUXXYYzTuWWpdiScMY3nbHxlZmeTHTA7cKqZhp3ZlF0CJEZOMIV8VeYYwLuFiwCiPRbMbxX5DAqZzjtXCl-rhRrTWrEFk9ELmtTQpwc1w7h4njiMtC5l5Uhj_dlkVMk6hII02rbxFH3o476ps6siasu3fGNkBEEDCtQogo4qYVQHr1ZpJBeouXtIsqRNPddL5d1sZqjSvahUzizkntOcw8PZ15fHtD7795Odja4dtfdP6uxfdbfHeT7x3z1sfe11b_4IfO97p893Cw1dahcrDV5dud_qfX_EOnd9SV8pud_sGxPnjb7h929d5Rh3_f7x13-N6Oztv7g93PQtv7DZ2_6vBv7ava4v3KYmkmr-4xydcADOcTGgCIiCDWCnwm8mWacZQYkeEngNYDUgxsm4AHrCBJmMloBDGUiYlvhbG4HCG2zWvaRL1Rj69rehjGFrFjRhJA5XYc-U6MbQtH1KcOIH0ypU0KL1afpplqqiZzYD22p7Rp6dVqPVp9Up11Hz4SvscOhugDAkQD5O6Au-WQ_2Hob_wV103t_MmcuaVNrDXX49sA3NeCafnK_AQOhM8z
linkProvider ISSN International Centre
openUrl ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=UNS+S31603%EC%97%90+%EB%8C%80%ED%95%98%EC%97%AC+%EC%99%84%EC%A0%84%EC%9A%94%EC%9D%B8%EC%84%A4%EA%B3%84%EB%A5%BC+%EC%9D%B4%EC%9A%A9%ED%95%9C+%EC%A0%84%ED%95%B4%EC%97%B0%EB%A7%88%EC%A1%B0%EA%B1%B4%EC%97%90+%EB%94%B0%EB%A5%B8+%ED%91%9C%EB%A9%B4+%EA%B1%B0%EC%B9%A0%EA%B8%B0%EC%9D%98+%EC%9C%A0%ED%9A%A8%EC%9D%B8%EC%9E%90+%EC%82%B0%EC%B6%9C&rft.jtitle=Corrosion+science+and+technology&rft.au=%EA%B9%80%EC%84%B1%EC%A2%85&rft.au=%ED%99%A9%ED%98%84%EA%B7%9C&rft.date=2022-08-31&rft.pub=%ED%95%9C%EA%B5%AD%EB%B6%80%EC%8B%9D%EB%B0%A9%EC%8B%9D%ED%95%99%ED%9A%8C&rft.issn=1598-6462&rft.eissn=2288-6524&rft.spage=314&rft.epage=324&rft_id=info:doi/10.14773%2Fcst.2022.21.4.314&rft.externalDBID=n%2Fa&rft.externalDocID=oai_kci_go_kr_ARTI_10038743
thumbnail_l http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=1598-6462&client=summon
thumbnail_m http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=1598-6462&client=summon
thumbnail_s http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=1598-6462&client=summon